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Adaptive minimum symbol-error-rate decision feedback equalization for multilevel pulse-amplitude modulation

机译:多级脉冲幅度调制的自适应最小符号误码率判决反馈均衡

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摘要

The design of decision feedback equalizers (DFEs) is typically based on the minimum mean square error (MMSE) principle, as this leads to effective adaptive implementation in the form of the least mean square algorithm. It is well-known, however, that in certain situations the MMSE solution can be distinctly inferior to the optimal minimum symbol error rate (MSER) solution. We consider the MSER design for multi-level pulse-amplitude modulation. Block-data adaptive implementation of the theoretical MSER DFE solution is developed based on the Parzen window estimate of probability density function. Furthermore, a sample-by-sample adaptive MSER algorithm, called the least symbol error rate (LSER), is derived for adaptive equalization application. The proposed LSER algorithm has a complexity that increases linearly with the equalizer length. Computer simulation is employed to evaluate the proposed alternative MSER design for equalization application with multi-level signalling schemes.
机译:决策反馈均衡器(DFE)的设计通常基于最小均方误差(MMSE)原理,因为这导致以最小均方算法的形式进行有效的自适应实现。但是,众所周知,在某些情况下,MMSE解决方案可能明显不如最佳最小符号错误率(MSER)解决方案。我们考虑用于多级脉冲幅度调制的MSER设计。基于概率密度函数的Parzen窗估计,开发了理论MSER DFE解决方案的块数据自适应实现。此外,推导了称为最小符号错误率(LSER)的逐样本自适应MSER算法,用于自适应均衡应用。所提出的LSER算法具有随着均衡器长度线性增加的复杂度。计算机仿真被用来评估提出的用于多级信令方案的均衡应用的备选MSER设计。

著录项

  • 作者

    Chen S.; Hanzo L.; Mulgrew B.;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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